REDIN PLUS
HAEMATINIC CAPSULES WITH CHOLINE LYSINE AND ZINC
What it does
Choline is a nutrient important for various bodily functions, including brain health and liver function.
Commonly used for: supporting brain health, helping with liver function
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Source: Pharmacy and Poisons Board · fetched 2026-01-28 22:10:14 · updated 2026-03-23 04:55:25
About choline
Choline is a nutrient important for various bodily functions, including brain health and liver function.
What it treats
- supporting brain health
- helping with liver function
How it works
Choline helps produce important substances in the body, like phospholipids, which are essential for cell membranes.
Who it's for
Choline can be beneficial for people needing support for cognitive function and liver health.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About haematinic
Haematinics are substances that help increase the amount of iron in your body, which is important for making red blood cells.
What it treats
- iron deficiency anemia
- low iron levels
How it works
Haematinics work by providing your body with the iron it needs to produce healthy red blood cells.
Who it's for
These are typically for people with low iron levels or those who have trouble absorbing enough iron from their diet.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About lysine
Lysine is an essential amino acid that helps your body build proteins and supports immune function.
What it treats
- to support the treatment of cold sores (herpes simplex)
- to promote muscle recovery and growth
- to improve overall health and wellness
How it works
Lysine helps the body produce proteins and supports various bodily functions, including the immune system.
Who it's for
Lysine is for people looking to boost their protein intake, support immune health, or manage cold sores.
Cautions
- • Consult a healthcare professional if you have kidney issues.
- • May cause gastrointestinal discomfort in some individuals.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: choline
BNF-referencedCholine is an essential nutrient that plays a critical role in various biological processes, particularly in the maintenance of cell membrane integrity, neurotransmitter synthesis, and lipid metabolism. It is a precursor of acetylcholine, a neurotransmitter vital for nerve conduction and cognitive function. Choline also contributes to the synthesis of phosphatidylcholine and sphingomyelin, important phospholipids in cellular membranes. Inadequate choline intake can lead to several health issues, including liver dysfunction and neurological disorders.
Indications
- Choline deficiency
- Support in liver function
- Neurological health, including cognitive function
- Fat metabolism disorders
Dosage
Children: Refer to the BNF for Children for specific dosing guidelines.
Adults: Refer to the BNF for specific dosing guidelines.
Mechanism of action
Choline is a major component of phosphatidylcholine, which is essential for maintaining cell membrane integrity, facilitating information flow, and intracellular communication. It is involved in the synthesis of acetylcholine, a key neurotransmitter in the central nervous system. Choline deficiency can lead to apoptosis by affecting cell membrane composition and increasing ceramide levels, which activates apoptotic pathways. Additionally, choline is a precursor to betaine, which helps regulate homocysteine levels, thus reducing cardiovascular risks.
Pharmacodynamics
Choline is crucial for proper nerve conduction in the central nervous system as it is a precursor for acetylcholine. It supports liver function, gallbladder regulation, and lipid metabolism. Adequate choline levels are associated with the prevention of excessive fat accumulation in the liver and may mitigate conditions such as Parkinsonism and tardive dyskinesia. Deficiencies can lead to serious health problems, including liver dysfunction and stunted growth.
Pharmacokinetics
Choline is absorbed in the intestines and distributed throughout the body, where it is utilized in various metabolic pathways. The liver plays a central role in choline metabolism, converting it into phosphatidylcholine and other metabolites. The half-life and excretion pathways of choline are not well defined but are influenced by dietary intake, physiological state, and individual metabolism.
Interactions
- corticosteroids+cholinesalicylate: Unknown (decreases concentration)
Pregnancy
Choline is generally considered safe during pregnancy, as it is essential for fetal development, particularly for brain development and function. However, it is important to adhere to recommended dietary allowances.
Breast-feeding
Choline is important during breastfeeding as it supports infant brain development. Adequate intake is recommended for nursing mothers.
Storage
Store in a cool, dry place, away from direct sunlight and moisture. Keep out of reach of children.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: haematinic
Haematinics are agents that enhance the production of hemoglobin and red blood cells, primarily used to treat or prevent anemia caused by iron deficiency or other hematological conditions. They play a critical role in managing conditions associated with inadequate hemoglobin levels, such as iron-deficiency anemia, megaloblastic anemia, and anemia of chronic disease. Haematinics include iron supplements, vitamin B12, and folic acid, which are essential for erythropoiesis.
Indications
- Iron-deficiency anemia
- Megaloblastic anemia
- Anemia of chronic disease
- Pregnancy-related anemia
- Nutritional deficiencies
Dosage
Adults: Refer to the relevant BNF text for specific dosing guidelines, as doses will
Mechanism of action
Iron supplements, as a key component of haematinics, function by replenishing iron stores in the body, which is crucial for hemoglobin synthesis. Iron is incorporated into hemoglobin within red blood cells, facilitating oxygen transport. Vitamin B12 and folic acid are vital for DNA synthesis and cell division, playing significant roles in the maturation of red blood cells in the bone marrow. Their deficiency can lead to megaloblastic anemia, characterized by the production of large, dysfunctional red blood cells.
Pharmacodynamics
The pharmacodynamic effects of haematinics pertain to their ability to improve hemoglobin concentrations and overall erythropoiesis. Iron supplements increase serum ferritin levels and transferrin saturation, promoting better oxygen-carrying capacity of the blood. Vitamin B12 and folic acid enhance the proliferation and maturation of erythroid progenitor cells, ensuring a healthy red blood cell turnover and prevent macrocytic anemia.
Pharmacokinetics
Iron is absorbed primarily in the duodenum and proximal jejunum, with absorption influenced by dietary factors and the form of iron administered (ferrous vs ferric). Once absorbed, iron is transported in the bloodstream bound to transferrin, and stored in the liver as ferritin. Vitamin B12 is absorbed in the ileum and requires intrinsic factor for optimal absorption, while folic acid is absorbed in the jejunum. The half-lives of these agents vary, with dietary iron having a half-life of several hours to days in the body, while vitamin B12 can remain stored in the liver for several years.
Contra-indications
- Hypersensitivity to any component of the formulation
- Hemochromatosis
- Hemosiderosis
- Uncontrolled hypertension
Adverse effects
- Gastrointestinal disturbances (nausea, vomiting, constipation, diarrhea)
- Abdominal pain
- Metallic taste
- Dark stools
- Allergic reactions (rash, itching)
- Iron overload (in cases of excessive dosage)
Interactions
- Antacids may reduce the absorption of iron
- Certain antibiotics (like tetracyclines and fluoroquinolones) may have reduced effectiveness when taken with iron
- Vitamin C can enhance iron absorption
- Foods high in calcium or phosphates may inhibit iron absorption
Precautions
- Monitor hemoglobin levels during treatment to avoid iron overload
- Use with caution in patients with liver disease
- Consider potential interactions with other medications
- Assess dietary intake to avoid excessive iron supplementation
Pregnancy
Iron supplementation is commonly recommended during pregnancy to prevent or treat iron deficiency anemia. Dosage and specific formulations should be guided by clinical evaluation.
Breast-feeding
Iron can be excreted in breast milk, but supplementation is typically safe and may be necessary for breastfeeding mothers, especially if they are anemic. Consultation with a healthcare provider is advised.
Storage
Store in a cool, dry place, away from moisture and direct sunlight. Keep out of reach of children.
Formulations
- Oral tablets
- Liquid formulations
- Intravenous preparations
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: lysine
BNF-referencedLysine is an essential amino acid that plays a crucial role in various physiological processes, including protein synthesis, calcium absorption, and the production of antibodies, hormones, and enzymes. It is particularly noted for its potential in inhibiting the replication of the herpes simplex virus when present in higher ratios relative to L-arginine. Lysine deficiency can lead to a range of health issues such as fatigue, irritability, and reproductive problems.
Indications
- Herpes simplex virus infections
- Lysine deficiency
Dosage
Children: Refer to the BNF for Children for specific dosage recommendations.
Adults: Refer to the BNF for specific dosage recommendations.
Mechanism of action
Lysine inhibits the viral replication of the herpes simplex virus by altering the amino acid ratio in the tissue culture media. A higher concentration of L-lysine compared to L-arginine has been shown to reduce viral growth and cytopathogenicity. Additionally, lysine facilitates calcium absorption from the small intestine and is involved in protein synthesis through its role in the tRNA charging process, linking amino acids to their corresponding tRNA for translation.
Pharmacodynamics
Lysine ensures adequate calcium absorption and is involved in the formation of collagen, essential for bone, cartilage, and connective tissues. It aids in the production of various biological molecules, including antibodies, hormones, and enzymes. Deficiency in lysine can manifest as tiredness, inability to concentrate, irritability, and other health issues.
Pharmacokinetics
Lysine is absorbed in the small intestine and is transported in the bloodstream to various tissues, where it participates in protein synthesis and other metabolic processes. The metabolism of lysine involves its degradation and utilization in various biosynthetic pathways.
Adverse effects
- Gastrointestinal upset
- Diarrhea
- Nausea
- Abdominal pain
Precautions
- Use with caution in individuals with kidney disease
- Consult a healthcare professional before use if pregnant or breastfeeding
Pregnancy
Safety in pregnancy has not been established. Consult a healthcare professional before use.
Breast-feeding
Lysine is generally considered safe in breastfeeding, but consult a healthcare professional before use.
Storage
Store in a cool, dry place away from direct sunlight. Keep out of reach of children.
Formulations
- Oral tablet
- Oral capsule
- Powder for oral solution
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: choline
PubChem CID 305Molecular formula: C5H14NO+
Mechanism of action
Choline is a major part of the polar head group of phosphatidylcholine. Phosphatidylcholine's role in the maintenance of cell membrane integrity is vital to all of the basic biological processes: information flow, intracellular communication and bioenergetics. Inadequate choline intake would negatively affect all these processes. Choline is also a major part of another membrane phospholipid, sphingomyelin, also important for the maintenance of cell structure and function. It is noteworthy and not surprising that choline deficiency in cell culture causes apoptosis or programmed cell death. This appears to be due to abnormalities in cell membrane phosphatidylcholine content and an increase in ceramide, a precursor, as well as a metabolite, of sphingomyelin. Ceramide accumulation, which is caused by choline deficiency, appears to activate Caspase, a type of enzyme that mediates apoptosis. Betaine or trimethylglycine is derived from choline via an oxidation reaction. Betaine is one of the factors that maintains low levels of homocysteine by resynthesizing L-methionine from homocysteine. Elevated homocysteine levels are a significant risk factor for atherosclerosis, as well as other cardiovascular and neurological disorders. Acetylcholine is one of the major neurotransmitters and requires choline for its synthesis. Adequate acetylcholine levels in the brain are believed to be protective against certain types of dementia, including Alzheimer's disease.
Pharmacodynamics
This compound is needed for good nerve conduction throughout the CNS (central nervous system) as it is a precursor to acetylcholine (ACh). Choline is also needed for gallbladder regulation, liver function and lecithin (a key lipid) formation. Choline also aids in fat and cholesterol metabolism and prevents excessive fat build up in the liver. Choline has been used to mitigate the effects of Parkinsonism and tardive dyskinesia. Choline deficiencies may result in excessive build-up of fat in the liver, high blood pressure, gastric ulcers, kidney and liver dysfunction and stunted growth.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: lysine
PubChem CID 5962Molecular formula: C6H14N2O2
Mechanism of action
Proteins of the herpes simplex virus are rich in L-arginine, and tissue culture studies indicate an enhancing effect on viral replication when the amino acid ratio of L-arginine to lysine is high in the tissue culture media. When the ratio of L-lysine to L-arginine is high, viral replication and the cytopathogenicity of herpes simplex virus have been found to be inhibited. L-lysine may facilitate the absorption of calcium from the small intestine. Amino acids are selected for protein synthesis by binding with transfer RNA (tRNA) in the cell cytoplasm. The information on the amino acid sequence of each individual protein is contained in the sequence of nucleotides in the messenger RNA (mRNA) molecules, which are synthesized in the nucleus from regions of DNA by the process of transcription. The mRNA molecules then interact with various tRNA molecules attached to specific amino acids in the cytoplasm to synthesize the specific protein by linking together individual amino acids; this process, known as translation, is regulated by amino acids (e.g., leucine), and hormones. Which specific proteins are expressed in any particular cell and the relative rates at which the different cellular proteins are synthesized, are determined by the relative abundances of the different mRNAs and the availability of specific tRNA-amino acid combinations, and hence by the rate of transcription and the stability of the messages. From a nutritional and metabolic point of view, it is important to recognize that protein synthesis is a continuing process that takes place in most cells of the body. In a steady state, when neither net growth nor protein loss is occurring, protein synthesis is balanced by an equal amount of protein degradation. The major consequence of inadequate protein intakes, or diets low or lacking in specific indispensable amino acids relative to other amino acids (often termed limiting amino acids), is a shift in this balance so that rates of synthesis of some body proteins decrease while protein degradation continues, thus providing an endogenous source of those amino acids most in need. /Amino acids/ The mechanism of intracellular protein degradation, by which protein is hydrolyzed to free amino acids, is more complex and is not as well characterized at the mechanistic level as that of synthesis. A wide variety of different enzymes that are capable of splitting peptide bonds are present in cells. However, the bulk of cellular proteolysis seems to be shared between two multienzyme systems: the lysosomal and proteasomal systems. The lysosome is a membrane-enclosed vesicle inside the cell that contains a variety of proteolytic enzymes and operates mostly at acid pH. Volumes of the cytoplasm are engulfed (autophagy) and are then subjected to the action of the protease enzymes at high concentration. This system is thought to be relatively unselective in most cases, although it can also degrade specific intracellular proteins. The system is highly regulated by hormones such as insulin and glucocorticoids, and by amino acids. The second system is the ATP-dependent ubiquitin-proteasome system, which is present in the cytoplasm. The first step is to join molecules of ubiquitin, a basic 76-amino acid peptide, to lysine residues in the target protein. Several enzymes are involved in this process, which selectively targets proteins for degradation by a second component, the proteasome. /Amino acids/
Pharmacodynamics
Insures the adequate absorption of calcium; helps form collagen ( which makes up bone cartilage & connective tissues); aids in the production of antibodies, hormones & enzymes. Recent studies have shown that Lysine may be effective against herpes by improving the balance of nutrients that reduce viral growth. A deficiency may result in tiredness, inability to concentrate, irritability, bloodshot eyes, retarded growth, hair loss, anemia & reproductive problems.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
This drug in other countries
The same active ingredient registered across other registries we cover - including different brands.
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- ASTYMIN-C DROPS (Each ml contains Theonine/Valine/Methionine/Isoleucine/Leucine/Phenylalanine/Tryptophan/Lysine Hydrochloride/Ascorbic acid 0.84mg/1.34mg/1.84mg/1.18mg/3.66mg/1.00mg/1.00mg/5.00mg/100mg) · Til Healthcare
- BABYVITE TONIC · Mercury Laboratory